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STAT-KON WE003ER Compound. High Structural PBT Resin 15% Carbon Fiber

ATEX Electrically Conductive, Stiffness, Easy Molding & Mold Release

LNP™ STAT-KON™ WE003ER Compound is a High-Performance Polybutylene Terephthalate (PBT) Compound Reinforced with 15% Carbon Fiber, engineered for applications requiring Electrical Conductivity, Structural Strength, Dimensional Stability and reliable Processing Performance. designed for Industrial, Electrical and Hazardous Area applications, STAT-KON™ WE003ER combines the Inherent Advantages of PBT Resin with Conductive Carbon Fiber Technology to provide a Durable and efficient Engineering material Solution.

A Key Advantage of LNP™ STAT-KON™ WE003ER Compound is its ability to provide controlled Electrical Conductivity while maintaining excellent Mechanical Performance. The Compound offers a Surface Resistivity range of approximately 1 × 10² to 1 × 10⁴ Ω, making it suitable for Static Dissipation, Conductive Housings, Handling Equipment and applications requiring Electrostatic Control. Its Conductivity characteristics also support ATEX-Compliant Equipment Designs, helping Engineers address Safety requirements in Environments where Static Charge Accumulation can create Operational Risks.

The Incorporation of 15% Carbon Fiber Reinforcement significantly Improves Stiffness and Structural performance compared with standard PBT Materials. This Reinforcement enhances Dimensional Stability while maintaining good Impact Strength, making the material suitable for Load-Bearing Components, Equipment Housings and Precision Industrial Parts.

Unlike many Conductive Compounds, STAT-KON™ WE003ER combines Mechanical Strength with excellent Processing Characteristics. The material Exhibits good Flow during Molding Operations and offers easy Mold Release, helping manufacturers achieve efficient Production Cycles while maintaining Dimensional Consistency and High-Quality Molded Surfaces.

LNP™ STAT-KON™ WE003ER also Benefits from the Natural properties of PBT Resin, including excellent Dimensional Stability, Low Moisture Absorption and reliable performance across a Wide range of Industrial Operating Environments. These characteristics Help finished components maintain their Shape, Tolerances and Functionality throughout Long-Term Service.

The Compound is particularly suitable for Electrical Equipment, Industrial Automation Systems, Static-Control Assemblies, ATEX-Related Equipment, Electronic Housings and Structural components requiring both Conductivity and Mechanical Strength. Its balanced Property Profile allows Designers to Replace Heavier Metal components while maintaining performance and Improving Manufacturing Flexibility.

Another Significant benefit is the combination of Conductivity and good Impact Strength. many highly Conductive Materials Sacrifice Mechanical Durability; however, STAT-KON™ WE003ER provides a balance between Electrical performance and Structural Integrity, making it suitable for demanding Industrial applications where Toughness is Important.

In addition to its Electrical and Mechanical Advantages, LNP™ STAT-KON™ WE003ER Compound is RoHS Compliant, supporting Compliance with Global Environmental Regulations that Restrict the use of Hazardous Substances in Electrical and Electronic Equipment. This helps manufacturers meet Sustainability and Regulatory Objectives while maintaining the performance characteristics required for Advanced Engineering applications.


Notes:

LNP™ STAT-KON™ WE003ER Compound
Polybutylene Terephthalate (PBT) Resin
15% Carbon Fiber Reinforced
ATEX supporting Material
Surface Resistivity: 1 × 10² to 1 × 10⁴ Ω
Excellent Stiffness
Excellent Dimensional Stability
Low Moisture Absorption
Easy Molding
RoHS Compliant


STAT-KON™ WE003ER Resin has a Flexural Modulus of 8800 MPa. 2 mm/min ISO 178

STAT-KON™ WE003ER Resin offers a Tensile Strain, Break, 5 mm/min of 2.1%. ISO 527

SABIC LNP™ STAT-KON™ WE003ER compound offer HDT, 1.82 MPa of -°C

LNP™ STAT-KON™ WE003ER Compound Resin has 0.2 ~ 0.4% Shrinkage, Along flow

STAT-KON® WE003ER Compound are Non UL94 Listed

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